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Phasing mechanisms between the in-line and cross-flow vortex-induced vibrations of a long tensioned beam in shear flow

机译:剪切流中长张力梁的线内和横流涡流诱发振动之间的相位机制

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The mechanisms of phasing between the in-line and cross-flow vortex-induced vibrations of a cylindrical tensioned beam in non-uniform flow are studied by direct numerical simulation. Three types of responses are considered, mono-frequency, narrowband, and broadband multi-frequency vibrations; in all cases, inline and cross-flow vibration components occurring with a frequency ratio of 2 are phase-locked within regions of wake-body synchronization. The in-line/cross-flow phase difference exhibits a persistent span-wise drift when vibration components present significant traveling-wave behavior; this drift depends linearly on the in-line/cross-flow wavenumber difference, controlled by the beam non-linear dispersion relation and also impacted by the effective added mass variability.
机译:通过直接数值模拟研究了圆柱状张紧梁在非均匀流中的在线和交叉流涡流激振之间的定相机理。考虑了三种类型的响应:单频,窄带和宽带多频振动。在所有情况下,频率比为2的在线和横流振动分量都锁相在尾流体同步区域内。当振动分量表现出显着的行波行为时,线内/错流相位差表现出持续的跨度漂移。这种漂移线性地取决于线内/错流波数差,该差受光束非线性色散关系控制,并且还受到有效附加质量变化的影响。

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